SURFACE MODIFICATION OF ALUMINA-SILICA BY ADDITIVE AGENT USING SOL-GEL METHOD AS FILLER DENTAL COMPOSITE

Yanwar Faza, V. Takarini, R. Febrida, E. Karlina
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Abstract

Background: Macro-sized and inhomogeneous distribution of ceramic filer particles make it difficult to obtain smooth surfaces of dental composite after polishing. Objective. This study aims to synthesize alumina silica (Al2O3-SiO2) fillers using sol gel method with the additives agent chitosan 5%, 10% and polyethylene glycol (PEG) 5% to produce micro particle size and evenly distributed particle as filler dental composite. Methods. The type of research is descriptive explorative. The sol-gel process was utilized to synthesize filler particles of Al2O3-SiO2. TEOS was dissolved in ethanol and mixed with acetic acid as catalyts. Al2(NO3)3 was added into the solution and mixed homogenously. Subsequently, the additive agents (Chitosan 5%, chitosan 10% and PEG) were mixed into the mixture for 30 minutes. Drying the samples for 48 hours at 60°C in the oven. The Dynamic light scattering (DLS) SZ-1 was used to evaluate the size, particle distribution and zeta potential. Result. The results showed that the addition of chitosan 10% produced a smaller size of Al2O3-SiO2 compared to other samples. A homogeneous particle distribution is shown in the sample with PEG 5%. Meanwhile, zeta potential values of the filler particles Al2O3-SiO2 with the addition of chitosan 10% shows the biggest value. Conclusion: The additive agent of chitosan 10% can modify the surface of filler Al2O3-SiO2 in order to inhibit particle growth more effectively but better particle distribution is shown in samples with PEG 5% due to the lower viscosity than chitosan thus it is easily homogenized in the solution
用溶胶-凝胶法添加剂对氧化铝-二氧化硅进行表面改性,作为填充牙科复合材料
背景:陶瓷滤料颗粒的宏观尺寸和不均匀分布使得抛光后的牙科复合材料难以获得光滑的表面。研究目的本研究旨在采用溶胶凝胶法合成氧化铝二氧化硅(Al2O3-SiO2)填料,并加入添加剂壳聚糖 5%、10% 和聚乙二醇(PEG)5%,以制备粒径微小且分布均匀的颗粒作为牙科复合材料填料。研究方法。研究类型为描述性探索。采用溶胶-凝胶法合成 Al2O3-SiO2 填充剂颗粒。将 TEOS 溶解在乙醇中,并与乙酸混合作为催化剂。在溶液中加入 Al2(NO3)3,并均匀混合。然后将添加剂(5% 壳聚糖、10% 壳聚糖和 PEG)混入混合物中 30 分钟。在 60°C 的烘箱中干燥样品 48 小时。使用动态光散射(DLS)SZ-1 评估粒度、颗粒分布和 zeta 电位。结果结果表明,与其他样品相比,添加 10%壳聚糖产生的 Al2O3-SiO2 粒径较小。加入 PEG 5% 的样品呈现出均匀的颗粒分布。同时,添加 10%壳聚糖的 Al2O3-SiO2 填料颗粒的 zeta 电位值最大。结论壳聚糖 10%的添加剂可以改变填料 Al2O3-SiO2 的表面,从而更有效地抑制颗粒的生长,但 PEG 5%的样品显示出更好的颗粒分布,这是因为 PEG 的粘度比壳聚糖低,因此容易在溶液中均匀化。
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